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Advancing Uranium Remediation: The Graphene-Based Solution

Graphene shows promise for efficient uranium remediation in nuclear waste, with high sorption capacity and chemical stability. ....

Tesfay Reda , Doomits Shutterstock , Research Case , Graphene Oxide , Uranium Wastewater , Uranium Adsorption , Graphene Composite , Nuclear Waste ,

"Porous Magnesium Hydride Nanoparticles Uniformly Coated by Mg-Based Co" by Panyu Gao, Shunlong Ju et al.

Magnesium hydride (MgH2) has been recognized as a promising anode material of lithium-ion batteries (LIBs) owing to its ultrahigh specific capacity. The low conductivity and the structural pulverization induced by large volume expansion, however, has long limited its practical lithium storage performance. Herein, a series of yolk-shell-like structures, composed of porous MgH2 nanoparticles (NPs) decorated with Mg-based composites through in-situ solid-gas reaction using MgH2 as both the reactant and the structural template, have been fabricated and uniformly dispersed on electronically conductive graphene. It could not only physically accommodate the volume change of MgH2 owing to the physical protection of Mg-based composites and the formation of void space inside MgH2 NPs, but also effectively facilitate the transportation of electrons throughout the whole electrode. Particularly, the uniform decoration of ultrathin Mg(BH4)2 as the shell with thermodynamically favorable intercalation ....

I Storage Performance , Agnesium Borohydride , Magnesium Hydride , Olk Shell Like Structure ,

Graphene: How will the global market develop in the next years and which are possible applications?

Since its practical isolation in 2004, graphene and related materials sparked enormous expectations in terms of technological application opportunity and potential economic value. In this context, . ....

United States , Ulrich Schmoch , North America , East Asia , Lorenzo Wormer , Roadmap Briefs , 2d Materials , Market Analysis ,